Delorme V, Giranton J L, Hatzfeld Y, Friry A, Heizmann P, Ariza M J, Dumas C, Gaude T, Cock J M
UMR 9938 CNRS-INRA-ENSL, Ecole Normale Supérieure de Lyon, France.
Plant J. 1995 Mar;7(3):429-40. doi: 10.1046/j.1365-313x.1995.7030429.x.
The S locus, which controls the self-incompatibility response in Brassica, has been shown to contain at least two genes. SLG encodes a secreted S locus glycoprotein whilst SRK encodes a putative S locus receptor kinase. SRK has been shown potentially to encode a functional kinase and genetic evidence indicates that this gene is essential for the self-incompatibility response. Here the characterization of the SRK and SLG genes of a Brassica line homozygous for the S3 haplotype is described. A 120 kDa glycoprotein was identified in stigmas and several lines of evidence indicated that this protein is encoded by the SRK3 gene. First, the 120 kDa glycoprotein was recognized by antibodies raised against peptides based on the SRK3 gene sequence. Secondly, this protein is polymorphic and, in an F2 population segregating for the S3 haplotype, was expressed only in plants possessing the S3 haplotype. Thirdly, the 120 kDa protein was expressed specifically in stigmas. Finally, the 120 kDa protein was only extracted from stigmas in the presence of detergent indicating that it is anchored in the membrane. SRK has been predicted to encode a transmembrane glycoprotein based on the deduced amino acid sequence. Located on the membrane, SRK is in a position to interface between an extracellular recognition event between pollen and pistil and an intracellular signal transduction pathway which initiates the self-incompatibility response.
控制甘蓝型油菜自交不亲和反应的S位点已被证明至少包含两个基因。SLG编码一种分泌型S位点糖蛋白,而SRK编码一种假定的S位点受体激酶。已证明SRK可能编码一种功能性激酶,并且遗传证据表明该基因对于自交不亲和反应至关重要。本文描述了一个纯合S3单倍型的甘蓝型油菜品系的SRK和SLG基因的特征。在柱头中鉴定出一种120 kDa的糖蛋白,多条证据表明该蛋白由SRK3基因编码。首先,基于SRK3基因序列针对肽段产生的抗体识别出了120 kDa的糖蛋白。其次,该蛋白具有多态性,并且在一个为S3单倍型分离的F2群体中,仅在具有S3单倍型的植株中表达。第三,120 kDa的蛋白在柱头中特异性表达。最后,仅在存在去污剂的情况下才能从柱头中提取出120 kDa的蛋白,这表明它锚定在膜上。根据推导的氨基酸序列预测SRK编码一种跨膜糖蛋白。位于膜上的SRK能够在花粉与雌蕊之间的细胞外识别事件和启动自交不亲和反应的细胞内信号转导途径之间起连接作用。